Literature DB >> 23010475

Cholesterol efflux is differentially regulated in neurons and astrocytes: implications for brain cholesterol homeostasis.

Jing Chen1, Xiaolu Zhang, Handojo Kusumo, Lucio G Costa, Marina Guizzetti.   

Abstract

Disruption of cholesterol homeostasis in the central nervous system (CNS) has been associated with neurological, neurodegenerative, and neurodevelopmental disorders. The CNS is a closed system with regard to cholesterol homeostasis, as cholesterol-delivering lipoproteins from the periphery cannot pass the blood-brain-barrier and enter the brain. Different cell types in the brain have different functions in the regulation of cholesterol homeostasis, with astrocytes producing and releasing apolipoprotein E and lipoproteins, and neurons metabolizing cholesterol to 24(S)-hydroxycholesterol. We present evidence that astrocytes and neurons adopt different mechanisms also in regulating cholesterol efflux. We found that in astrocytes cholesterol efflux is induced by both lipid-free apolipoproteins and lipoproteins, while cholesterol removal from neurons is triggered only by lipoproteins. The main pathway by which apolipoproteins induce cholesterol efflux is through ABCA1. By upregulating ABCA1 levels and by inhibiting its activity and silencing its expression, we show that ABCA1 is involved in cholesterol efflux from astrocytes but not from neurons. Furthermore, our results suggest that ABCG1 is involved in cholesterol efflux to apolipoproteins and lipoproteins from astrocytes but not from neurons, while ABCG4, whose expression is much higher in neurons than astrocytes, is involved in cholesterol efflux from neurons but not astrocytes. These results indicate that different mechanisms regulate cholesterol efflux from neurons and astrocytes, reflecting the different roles that these cell types play in brain cholesterol homeostasis. These results are important in understanding cellular targets of therapeutic drugs under development for the treatments of conditions associated with altered cholesterol homeostasis in the CNS.
Copyright © 2012 Elsevier B.V. All rights reserved.

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Year:  2012        PMID: 23010475      PMCID: PMC3534809          DOI: 10.1016/j.bbalip.2012.09.007

Source DB:  PubMed          Journal:  Biochim Biophys Acta        ISSN: 0006-3002


  51 in total

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Authors:  J F Oram; R M Lawn
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Review 5.  ABCA1-mediated transport of cellular cholesterol and phospholipids to HDL apolipoproteins.

Authors:  J F Oram; A M Vaughan
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Authors:  Radosveta P Koldamova; Iliya M Lefterov; Milos D Ikonomovic; John Skoko; Preslav I Lefterov; Barbara A Isanski; Steven T DeKosky; John S Lazo
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  43 in total

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5.  Cerebrospinal fluid apolipoprotein E and phospholipid transfer protein activity are reduced in multiple sclerosis; relationships with the brain MRI and CSF lipid variables.

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6.  An LXR-Cholesterol Axis Creates a Metabolic Co-Dependency for Brain Cancers.

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7.  Arylsulfatase B modulates neurite outgrowth via astrocyte chondroitin-4-sulfate: dysregulation by ethanol.

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8.  Liver X receptors regulate cerebrospinal fluid production.

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9.  Prenatal Ethanol Exposure Up-Regulates the Cholesterol Transporters ATP-Binding Cassette A1 and G1 and Reduces Cholesterol Levels in the Developing Rat Brain.

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Review 10.  Liver X receptors, nervous system, and lipid metabolism.

Authors:  G Cermenati; E Brioschi; F Abbiati; R C Melcangi; D Caruso; N Mitro
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